Identification and confirmation of quantitative trait loci for root rot resistance in snap bean

被引:24
|
作者
Navarro, Felix [1 ]
Sass, Michell E. [1 ]
Nienhuis, James [1 ]
机构
[1] Univ Wisconsin, Dep Hort, Madison, WI 53706 USA
关键词
D O I
10.2135/cropsci2007.02.0113
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Root rot, caused by several pathogens including Pythium ultimum Trow and Aphanomyces euteiches Drechs f. sp. phaseoli W.F. Pfender and D.J. Hagedorn, is an important disease complex of snap bean (Phaseolus vulgaris L.). The objectives of this study were to identify, map, and validate markers associated with root rot resistance in three snap bean populations. An 'Eagle' x 'Puebla 152' recombinant inbred line (RIL) population was evaluated for root rot by plant stand percentage, plant vigor, and plant biomass. Field data were combined with a random amplified polymorphic DNA (RAPD) map to identify quantitative trait loci (QTL) associated with resistance using composite interval mapping. In addition, two inbred backcross (IBC) populations (EEP and EPH) derived from a cross (Eagle x Puebla 152) to Eagle and 'Hystyle' respectively were evaluated. Five regions from linkage groups B6, B3, and B7 of the P. vulgaris core map were associated with QTL for root rot resistance. High levels of resistance were also observed in several lines of the IBC populations. A major QTL for root rot resistance was associated with the tightly linked AD9.950 and S18.1500 RAPD marker alleles from linkage group B6 in the RIL population and confirmed explaining 25 to 49% of the variability for plant vigor and biomass in the IBC populations. The exploitation of the linkage disequilibrium between the AD9.950 and S18.1500 RAPD markers derived from Puebla 152 and Eagle can facilitate the development of root rot resistant cultivars.
引用
收藏
页码:962 / 972
页数:11
相关论文
共 50 条
  • [31] Identification and confirmation of RAPD markers and andromonoecious associated with quantitative trait loci for sugars in melon
    Sinclair, Jonathan W.
    Park, Soon O.
    Lester, Gene E.
    Yoo, Kil Sun
    Crosby, Kevin M.
    [J]. JOURNAL OF THE AMERICAN SOCIETY FOR HORTICULTURAL SCIENCE, 2006, 131 (03) : 360 - 371
  • [32] Confirmation of quantitative trait loci affecting fatness in chickens
    Jennen, DGJ
    Vereijken, ALJ
    Bovenhuis, H
    Crooijmans, RMPA
    van der Poel, JJ
    Groenen, MAM
    [J]. GENETICS SELECTION EVOLUTION, 2005, 37 (02) : 215 - 228
  • [33] Identification and confirmation of quantitative trait loci regulating alcohol consumption in congenic strains of mice
    Whatley, VJ
    Johnson, TE
    Erwin, VG
    [J]. ALCOHOLISM-CLINICAL AND EXPERIMENTAL RESEARCH, 1999, 23 (07) : 1262 - 1271
  • [34] Confirmation of quantitative trait loci for alcohol preference in mice
    Tarantino, LM
    McClearn, GE
    Rodriguez, LA
    Plomin, R
    [J]. ALCOHOLISM-CLINICAL AND EXPERIMENTAL RESEARCH, 1998, 22 (05) : 1099 - 1105
  • [35] Confirmation of quantitative trait loci affecting fatness in chickens
    Danyel GJ Jennen
    Addie LJ Vereijken
    Henk Bovenhuis
    Richard MPA Crooijmans
    Jan J van der Poel
    Martien AM Groenen
    [J]. Genetics Selection Evolution, 37 (3)
  • [36] Quantitative trait loci for Fusarium and Gibberella ear rot resistance in Argentinian maize germplasm
    Giomi, Gerardo M.
    Kreff, Enrique D.
    Iglesias, Juliana
    Fauguel, Carolina M.
    Fernandez, Mariana
    Silvina Oviedo, Maria
    Presello, Daniel A.
    [J]. EUPHYTICA, 2016, 211 (03) : 287 - 294
  • [37] Development of an SSR-based genetic map in sesame and identification of quantitative trait loci associated with charcoal rot resistance
    Wang, Linhai
    Zhang, Yanxin
    Zhu, Xiaodong
    Zhu, Xiaofeng
    Li, Donghua
    Zhang, Xianmei
    Gao, Yuan
    Xiao, Guobin
    Wei, Xin
    Zhang, Xiurong
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [38] Identification of Sclerotinia stem rot resistance quantitative trait loci in a chickpea (Cicer arietinum) recombinant inbred line population
    Mwape, Virginia W.
    Khoo, Kelvin H. P.
    Chen, Kefei
    Khentry, Yuphin
    Newman, Toby E.
    Derbyshire, Mark C.
    Mather, Diane E.
    Kamphuis, Lars G.
    [J]. FUNCTIONAL PLANT BIOLOGY, 2022, 49 (07) : 634 - 646
  • [39] Development of an SSR-based genetic map in sesame and identification of quantitative trait loci associated with charcoal rot resistance
    Linhai Wang
    Yanxin Zhang
    Xiaodong Zhu
    Xiaofeng Zhu
    Donghua Li
    Xianmei Zhang
    Yuan Gao
    Guobin Xiao
    Xin Wei
    Xiurong zhang
    [J]. Scientific Reports, 7
  • [40] Quantitative trait loci (QTL) in soybean for resistance to seed rot caused by Pythium sylvaticum
    Lerch, Elizabeth
    Robertson, Alison E.
    [J]. PHYTOPATHOLOGY, 2018, 108 (12) : 29 - 29